Abstract
We describe here the generation of new donor-acceptor disulfide architectures obtained in aqueous solution at physiological pH. The application of a dynamic combinatorial chemistry approach allowed us to generate a large number of new disulfide macrocyclic architectures together with a new type of [2]catenanes consisting of four distinct components. Up to fifteen types of structurally-distinct dynamic architectures have been generated through one-pot disulfide exchange reactions between four thiol-functionalized aqueous components. The distribution of disulfide products formed was found to be strongly dependent on the structural features of the thiol components employed. This work not only constitutes a success in the synthesis of topologically- and morphologically-complex targets, but it may also open new horizons for the use of this methodology in the construction of molecular machines.
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Drożdż, W., Kołodziejski, M., Markiewicz, G., Jenczak, A., & Stefankiewicz, A. R. (2015). Generation of a multicomponent library of disulfidedonor-acceptor architectures using dynamic combinatorial chemistry. International Journal of Molecular Sciences, 16(7), 16300–16312. https://doi.org/10.3390/ijms160716300
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